Surface carbohydrates of hamster fibroblasts. I. Chemical characterization of surface-labeled glycosphingolipids and aspecific ceramide tetrasaccharide for transformants.
Neutral glycosphingolipids of hamster fibroblast NIL cells have been characterized as follows: glucosylceramide, lactosylceramide (betaGall yields 4Glc yields Cer), a digalactosylceramide (alphaGall yields 4betaGal yields Cer), a trihexosylceramide (alphaGall yields 4betaGall yields 4Glc yields Cer), two kinds of ceramide tetrasaccharides (A: alphaGa1NAcl yields 3betaGalNAcl yields 3alphaGall yields 4betaGall yields 1Cer, a new type of Forssman active glycolipid; B: globoside, betaGalNAcl yields 3alphaGall yields 4betaGall yields 4betaGlc yields Cer), and a ceramide pentasaccharide having a classical structure for Forssman antigen (alphaGalNAcl yields 3betaGalNAcl yields 3alphaGall yields 4betaGall yields 4Glc yields Cer). 2. Neutral glycosphingolipids of polyoma virus-transformed NIL cells (NILpy) have been characterized as having an additional ceramide tetrasaccharide which was absent in normal NIL cells. The structure of this specific glycolipid was identified as lacto-N-neotetraosylceramide (betaGall yields 4betaGlc-NAcl yields 3betaGall yields 4Glc yields Cer). Chemical quantities of ceramide tetra- and pentasaccharides in NILpy cells were much lower than in NIL cells. 3. All of these glycolipids, except glucosylceramide and lactosylceramide, were labeled externally by galactose oxidase and tritiated borohydride according to the method previously described (GAHMBERG, C. G, and HAKOMORI, S. (1973) J. Biol. Chem. 248, 4311-4317). The specific activities of the label in glycolipid of NIHpy cells were much greater than that in NIL cells, i.e. reactivity of glycolipids with galactose oxidase in NIHpy cells was much higher than for NIL cells. The surface label in glycolipids was cell cycle-dependent in NIL cells, and a remarkable exposure of a galactosyl residue of a ceramide tetrasaccharide was demonstrated only on the surface of NILpy cells, due to the presence of lacto-N-neotetraosylceramide.
摘要
仓鼠成纤维细胞NIL细胞的中性糖鞘脂具有以下特征:葡糖神经酰胺、乳糖神经酰胺(βGal→4Glc→Cer)、二半乳糖神经酰胺(αGal→4βGal→Cer)、三己糖神经酰胺(αGal→4βGal→4Glc→Cer)、两种神经酰胺四糖(A:αGalNAc1→3βGalNAc1→3αGal→4βGal→1Cer,一种新型福斯曼活性糖脂;B:红细胞糖苷脂,βGalNAc1→3αGal→4βGal→4βGlc→Cer),以及一种具有福斯曼抗原经典结构的神经酰胺五糖(αGalNAc1→3βGalNAc1→3αGal→4βGal→4Glc→Cer)。2. 多瘤病毒转化的NIL细胞(NILpy)的中性糖鞘脂的特征是具有一种正常NIL细胞中不存在的额外神经酰胺四糖。这种特定糖脂的结构被鉴定为乳糖-N-新四糖神经酰胺(βGal→4βGlcNAc1→3βGal→4Glc→Cer)。NILpy细胞中神经酰胺四糖和五糖的化学量远低于NIL细胞。3. 除葡糖神经酰胺和乳糖神经酰胺外,所有这些糖脂都按照先前描述的方法(GAHMBERG, C. G, and HAKOMORI, S. (1973) J. Biol. Chem. 248, 4311 - 4317)用半乳糖氧化酶和氚化硼氢化钠进行外部标记。NIHpy细胞糖脂中标记的比活性远高于NIL细胞,即NIHpy细胞中糖脂与半乳糖氧化酶的反应性远高于NIL细胞。NIL细胞中糖脂的表面标记依赖于细胞周期,并且由于乳糖-N-新四糖神经酰胺的存在,仅在NILpy细胞表面证明了神经酰胺四糖的半乳糖基残基有显著暴露。